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脂质双分子层膜中蛋白质侧向排列模型。在细胞色素c氧化酶电子自旋共振研究中的应用。

Models of protein lateral arrangements in lipid bilayer membranes. Application to electron spin resonance studies of cytochrome c oxidase.

作者信息

Pink D A, Chisholm D M, Chapman D

机构信息

Theoretical Physics Institute, St. Francis Xavier University, Antigonish, Nova Scotia, Canada.

出版信息

Chem Phys Lipids. 1988 Apr;46(4):267-77. doi: 10.1016/0009-3084(88)90041-2.

Abstract

We consider the situation of integral membrane proteins in a lipid bilayer matrix where the size of the polar group of the protein is important in determining the lateral packing of the proteins. We represent the cross-section of the protein hydrophobic core as a hexagon moving on a lattice, and represent the projection of the polar group onto the plane of the bilayer as a shape, parts of which overlap the hexagon. Lattice sites represent lipid molecules. We calculate the fraction of lipid molecules which are adjacent to the hydrophobic core of at least one protein. We use this data to consider the "motion restricted" spectrum observed in electron spin resonance (ESR) probe studies, and compute the dependence of the "motion restricted" fraction upon protein concentration. The resulting curves can be used to analyse ESR data in order to deduce the size and shape of the proteins' polar segment. We have used the range of models examined to study the dependence upon protein concentration of the particular case of the "motion restricted" spectrum of a spin-labelled lipid freely diffusing or, alternatively, covalently bound to cytochrome c oxidase. We find that our calculations are in accord with a model where approximately 60 lipid molecules can fit around an isolated such protein in both halves of the bilayer, and where the polar segment is substantially anisotropic and extends laterally beyond the limits of the hydrophobic core. The latter is in accord with what is known about the structure of cytochrome c oxidase. We indicate further measurements that should be performed in order to establish more definitively the dependence of the "motion restricted" component upon protein concentration, giving the lipid protein ratios at which they should be performed, and we make predictions concerning the results. Finally we argue for a particular unified way of plotting experimental data.

摘要

我们考虑了整合膜蛋白在脂质双分子层基质中的情况,其中蛋白质极性基团的大小对于确定蛋白质的侧向堆积很重要。我们将蛋白质疏水核心的横截面表示为在晶格上移动的六边形,并将极性基团在双分子层平面上的投影表示为一种形状,其部分与六边形重叠。晶格位点代表脂质分子。我们计算与至少一种蛋白质的疏水核心相邻的脂质分子的比例。我们使用这些数据来考虑在电子自旋共振(ESR)探针研究中观察到的“运动受限”光谱,并计算“运动受限”比例对蛋白质浓度的依赖性。所得曲线可用于分析ESR数据,以推断蛋白质极性片段的大小和形状。我们使用所研究的一系列模型来研究自旋标记脂质自由扩散或共价结合到细胞色素c氧化酶时“运动受限”光谱的特定情况下对蛋白质浓度的依赖性。我们发现我们的计算结果与一个模型相符,在该模型中,在双分子层的两半中,大约60个脂质分子可以围绕一个孤立的此类蛋白质排列,并且极性片段基本上是各向异性的,并且在横向延伸超出疏水核心的范围。后者与已知的细胞色素c氧化酶的结构一致。我们指出了为更明确地确定“运动受限”成分对蛋白质浓度的依赖性而应进行的进一步测量,给出了应进行这些测量时的脂质与蛋白质比例,并对结果进行了预测。最后,我们主张以一种特定的统一方式绘制实验数据。

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